IEEE Trans Neural Netw Learn Syst. 2020 Oct;31(10):4084-4093. doi: 10.1109/TNNLS.2019.2952108. Epub 2019 Dec 11.
In this article, we study the issue of adaptive neural output-feedback controller design for a class of uncertain switched time-delay nonlinear systems with nonlower triangular structure. The prominent contribution of this article is that the delay-dependent stability criterion of nonswitched nonlinear systems is successfully extended to that of switched nonlower triangular nonlinear systems. The design algorithm is listed as follows. First, a switched state observer is designed such that the error dynamic system can be generated. Second, neural networks, adaptive backstepping technique, and variable separation method are, respectively, applied to construct a common controller for all subsystems, in which the Lyapunov-Krasovskii functionals are deliberately constructed such that the average dwell-time scheme can be employed to guarantee the stability and performance of the closed-loop system, despite the existence of time delays. Third, the stability analysis process confirms in detail that all the variables of the closed-loop system are semiglobally uniformly ultimately bounded. Finally, simulation study is given to show the validity of the proposed control approach.
在本文中,我们研究了一类具有非下三角结构的不确定切换时滞非线性系统的自适应神经网络输出反馈控制器设计问题。本文的突出贡献在于成功地将非切换非线性系统的时滞相关稳定性准则推广到切换非下三角非线性系统。设计算法如下。首先,设计一个切换状态观测器,以生成误差动态系统。其次,分别应用神经网络、自适应反推技术和变量分离方法来为所有子系统构建一个通用控制器,其中故意构建李雅普诺夫-克拉索夫斯基函数,以便采用平均驻留时间方案来保证闭环系统的稳定性和性能,尽管存在时滞。第三,稳定性分析过程详细确认了闭环系统的所有变量都是半全局一致最终有界的。最后,给出了仿真研究结果,以验证所提出的控制方法的有效性。